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S-19214 датащит (PDF) 10 Page - ABLIC Inc.

№ деталь S-19214
подробность  AUTOMOTIVE, 125°C OPERATION, 36 V INPUT, 1000 mA VOLTAGE REGULATOR
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производитель  ABLIC [ABLIC Inc.]
домашняя страница  https://www.ablic.com
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S-19214 Datasheet(HTML) 10 Page - ABLIC Inc.

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AUTOMOTIVE, 125°C OPERATION, 36 V INPUT, 1000 mA VOLTAGE REGULATOR
S-19214 Series
Rev.1.1_00
10
2. Type in which output voltage is externally set
Table 10
(Tj =
−40°C to +125°C, VOUT = VVADJ unless otherwise specified)
Item
Symbol
Condition
Min.
Typ.
Max.
Unit
Test
Circuit
Adjustment pin
output voltage*1
VVADJ
VIN = 13.5 V, IOUT = 10 mA
1.773
1.8
1.827
V
7
2.8 V
≤ VIN ≤ 18.0 V, 1 mA ≤ IOUT ≤ 200 mA
1.768
1.8
1.832
V
7
Output voltage range
VROUT
1.8
30.0
V
13
Adjustment pin internal
resistance
RVADJ
26
M
Ω
Output current*2
IOUT
3.8 V
≤ VIN
1000*4
mA
9
Dropout voltage*3
Vdrop
IOUT = 200 mA, Ta =
+25°C
*5
V
7
Line regulation
ΔVOUT1
ΔVIN • VOUT
2.8 V
≤ VIN ≤ 28.0 V, IOUT = 10 mA
0.015
0.03
%/V
7
Load regulation
ΔVOUT2
VIN = 2.8 V,
1 mA
≤ IOUT ≤ 200 mA, Ta = +25°C
15
30
mV
7
Current consumption
during operation
ISS1
VIN = 13.5 V, ON / OFF pin = ON, IOUT = 10
μA
5.0
9.8
μA
8
Current consumption
during power-off
ISS2
VIN = 13.5 V, ON / OFF pin = OFF, no load
0.1
2.0
μA
8
Input voltage
VIN
2.8
36.0
V
ON / OFF pin
input voltage "H"
VSH
VIN = 13.5 V, RL = 1.0 k
Ω,
determined by VOUT output level
2.0
V
10
ON / OFF pin
input voltage "L"
VSL
VIN = 13.5 V, RL = 1.0 k
Ω,
determined by VOUT output level
0.8
V
10
ON / OFF pin
input current "H"
ISH
VIN = 13.5 V, VON / OFF = VIN
−0.1
0.3
1.0
μA
10
ON / OFF pin
input current "L"
ISL
VIN = 13.5 V, VON / OFF = 0 V
−0.1
0.1
μA
10
Ripple rejection
|RR|
VIN = 13.5 V, f = 100 Hz,
ΔVrip = 0.5 Vrms,
IOUT = 100 mA, Ta =
+25°C
60
dB
11
Short-circuit current
Ishort
VIN = 2.8 V, ON / OFF pin = ON,
VOUT = 0 V, Ta =
+25°C
250
mA
9
Thermal shutdown
detection temperature
TSD
Junction temperature
170
°C
Thermal shutdown
release temperature
TSR
Junction temperature
135
°C
Discharge shunt
resistance during
power-off
RLOW
VIN = 13.5 V, ON / OFF pin = OFF,
VOUT = 0.1 V
3.0
k
Ω
12
*1. VOUT(S):
Set output voltage = 1.8 V
*2. The output current at which the output voltage becomes 95% of VOUT(E) after gradually increasing the output current.
*3. Vdrop = VIN1
− (VOUT3 × 0.98)
VIN1 is the input voltage at which the output voltage becomes 98% of VOUT3 after gradually decreasing the input voltage.
VOUT3 is the output voltage when VIN = VOUT(S)
+ 1.0 V and IOUT = 200 mA.
*4. Due to limitation of the power dissipation, this value may not be satisfied. Attention should be paid to the power
dissipation when the output current is large.
This specification is guaranteed by design.
*5. The dropout voltage is limited by the difference between the input voltage (min. value) and the set output voltage.
In case of 1.8 V
≤ VOUT(S) < 2.8 V: 2.8 V − VOUT(S) = Vdrop


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